Monter d'un niveau |
Ce graphique trace les liens entre tous les collaborateurs des publications de {} figurant sur cette page.
Chaque lien représente une collaboration sur la même publication. L'épaisseur du lien représente le nombre de collaborations.
Utilisez la molette de la souris ou les gestes de défilement pour zoomer à l'intérieur du graphique.
Vous pouvez cliquer sur les noeuds et les liens pour les mettre en surbrillance et déplacer les noeuds en les glissant.
Enfoncez la touche "Ctrl" ou la touche "⌘" en cliquant sur les noeuds pour ouvrir la liste des publications de cette personne.
Aramesh, M., Attia, M. H., Kishawy, H. A., & Balazinski, M. (2016). Estimating the remaining useful tool life of worn tools under different cutting parameters: A survival life analysis during turning of titanium metal matrix composites (Ti-MMCs). CIRP Journal of Manufacturing Science and Technology, 12, 35-43. Lien externe
Aramesh, M., Shaban, Y., Yacout, S., Attia, M. H., Kishawy, H. A., & Balazinski, M. (2016). Survival life analysis applied to tool life estimation with variable cutting conditions when machining titanium metal matrix composites (Ti-MMCs). Machining Science and Technology, 20(1), 132-147. Lien externe
Aramesh, M., Shaban, Y., Balazinski, M., Attia, H., Kishawy, H. A., & Yacout, S. (juin 2014). Survival life analysis of the cutting tools during turning titanium metal matrix composites (Ti-MMCs) [Communication écrite]. 6th CIRP Conference on Performance Cutting (HPC 2014), Berkeley, Cal.. Publié dans Procedia CIRP, 14. Lien externe
Aramesh, M., Shaban, Y., Balazinski, M., Attia, M. H., & Kishawy, H. A. (mai 2014). Tool life prediction via survival life analysis of the cutting inserts during turning titanium metal matrix composites (TI-MMCs) [Communication écrite]. 3rd International Conference on Virtual Machining Process Technology (VMPT 2014), University of Calgary, Calgary, Alberta. Non disponible
Kannan, S., Kishawy, H. A., & Balazinski, M. (2013). Analysis of two- and three-body abrasive wear during machining of aluminium-based metal matrix composite. International Journal of Materials and Product Technology, 46(1), 81-94. Lien externe
Aramesh, M., Shi, B., Nassef, A. O., Attia, H., Balazinski, M., & Kishawy, H. A. (juin 2013). Meta-modeling optimization of the cutting process during turning titanium metal matrix composites (Ti-MMCs) [Communication écrite]. 14th CIRP Conference on Modeling of Machining Operations (CIRP CMMO 2013), Turin, Italy. Lien externe
Balazinski, M., Songmene, V., & Kishawy, H. A. (2011). Analyzing the machinability of metal matrix composites. Dans Machining Technology for Composite Materials: Principles and Practice (p. 394-411). Lien externe
Kishawy, H. A., Pang, L., & Balazinski, M. (2011). Modeling of tool wear during hard turning with self-propelled rotary tools. International Journal of Mechanical Sciences, 53(11), 1015-1021. Lien externe
Kannan, S., Kishawy, H. A., & Balazinski, M. (octobre 2006). Analysis of abrasive wear during machining metal matrix composites [Communication écrite]. Aerospace Materials and manufacturing Process: Emerging Materials, Manufacturing and Repair Techniques, Montréal, Québec. Non disponible
Kannan, S., Kishawy, H. A., & Balazinski, M. (2006). Flank Wear Progression During Machining Metal Matrix Composites. Journal of Manufacturing Science and Engineering, 128(3), 787-791. Lien externe
Kishawy, H. A., Haglund, A., & Balazinski, M. (2006). Modelling of Material Side Flow in Hard Turning. CIRP Annals - Manufacturing Technology, 55(1), 85-88. Lien externe
Kishawy, H. A., Kannan, S., & Balazinski, M. (2005). Analytical Modeling of Tool Wear Progression During Turning Particulate Reinforced Metal Matrix Composites. CIRP Annals - Manufacturing Technology, 54(1), 55-58. Lien externe
Kishawy, H. A., Kannan, S., & Balazinski, M. (2004). An Energy Based Analytical Force Model for Orthogonal Cutting of Metal Matrix Composites. CIRP Annals - Manufacturing Technology, 53(1), 91-94. Lien externe